| Literature DB >> 18710531 |
Richard A Moore1, Apichai Tuanyok, Donald E Woods.
Abstract
BACKGROUND: The ability of Burkholderia pseudomallei to survive in water likely contributes to its environmental persistence in endemic regions. To determine the physiological adaptations which allow B. pseudomallei to survive in aqueous environments, we performed microarray analyses of B. pseudomallei cultures transferred from Luria broth (LB) to distilled water.Entities:
Year: 2008 PMID: 18710531 PMCID: PMC2518269 DOI: 10.1186/1756-0500-1-11
Source DB: PubMed Journal: BMC Res Notes ISSN: 1756-0500
Bacterial strains and plasmids used in this study.
| Strain or plasmid | Description | Reference or source |
| Strains | ||
| F-mcrA Δ(mrr-hsdRMS-mcrBC)Φ80lacZΔM15 ΔlacX74 deoR recA1 araΔ139 Δ(ara-leu)7697 | Invitrogen | |
| American Type Culture Collection | ||
| American Type Culture Collection | ||
| B. pseudomallei | ||
| 1026b | Clinical isolate; Kmr Gmr Smr Pmr Tcs Tps | [ |
| DD503 | 1026b derivative; allelic exchange strain; Δ( | [ |
| SZ210 | DD503 derivative; Δ | [ |
| SR5 | wcbB::Tn5OT182 Tcr | [ |
| MB301 | DD503 derivative; | [ |
| SRM117 | 1026b derivitive; wbiI::Tn5-OT182; Tcr | [ |
| RM330 | DD503 derivative; | This study |
| RM0721 | DD503 derivative; BPSL0721::pGSV3- | This study |
| B. mallei | ||
| ATCC 23344 | Type strain genome sequence complete | American Type Culture Collection |
| Plasmids pGSV3- | Mobilizable suicide vector containing | [ |
| pCR2.1-TOPO | Topoisomerase-mediated cloning vector; Apr Kmr | Invitrogen |
Figure 1Survival of various bacteria in water. Survival kinetics of bacteria suspended in water. Bacteria were grown overnight in LB. Cells were centrifuged and washed once in water and an aliquot used to make a 40 ml suspension of approximately 106 CFU/ml in water. Plate counts were done at various time points to determine viable cells remaining.
Burkholderia pseudomallei genes up-regulated in water,
| BPSL2218 | Hypothetical protein |
| BPSL1944 | InfC, translational protein |
| BPSL2961 | putative phosphatidylglycerophosphatase |
| BPSL1854 | hypothetical protein |
| BPSL1600 | putative cytochrome c-related lipoprotein |
| BPSL0721 | putative membrane protein |
| BPSL0106 | putative exported protein |
| BPSL1723 | hypothetical protein |
| BPSL0313 | glmU, bifunctional glmU protein [includes: UDP-N-acetylglucosamine pyrophosphorylase; glucosamine-1-phosphate N-acetyltransferase] |
| BPSL1614A | putative iron-sulphur protein |
| BPSL1391 | putative phage related protein (partial) |
| BPSL0660 | pdxA, 4-hydroxythreonine-4-phosphate dehydrogenase |
| BPSL0381 | dsbA, thioldisulfide interchange protein |
| BPSL2772 | kdsA, putative 2-dehydro-3-deoxyphosphooctonate aldolase |
| BPSL0974 | conserved hypothetical protein |
| BPSL1797 | putative ABC transport system, membrane protein |
| BPSL1294 | conserved hypothetical protein |
Figure 2lux-mediated light prodution in B. pseudomallei RM0721. RM0721 was grown overnight and washed once in water. Cells were resuspended in either LB or water and light production and OD600 measured at indicated time points.
Figure 3Survival of B. pseudomallei RM0721 in water. Mutant RM0721 was grown overnight in LB and cells were washed in water and used to make a 40 ml suspension of approximately 106 CFU/ml in water. Plate counts were done at various time points to determine viable cells remaining. A similar tube was prepared using DD503 for comparison.
Figure 4Survival of B. pseudomallei in water at different growth phases. B. pseudomallei cultures were grown to either mid log phase (OD600~0.5) or overnight to stationary phase. Cells were washed in water and used to make a 40 ml suspension of approximately 106 CFU/ml in water. Plate counts were done at various time points to determine viable cells remaining.
Figure 5Polyhydroxybutyrate inclusions. Transmission electron micrograph of B. pseudomallei showing intracellular inclusions of PHB (white globules) in B. pseudomallei DD503 (A) and lack of PHB inclusions in the phaC mutant RM330 (B).